Simulation study on the boron-coated GEM neutron beam monitor

A Monte Carlo method of the 3D GEM simulation is introduced. The physical process of the neutron detection is described with the Geant4 code and the Garfield code. The results of the optimized electric-fields, the emitted ions spectrum, the elec- trons transverse diffusion and the signal width are p...

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Veröffentlicht in:Science China. Physics, mechanics & astronomy mechanics & astronomy, 2013-10, Vol.56 (10), p.1897-1902
Hauptverfasser: Wang, YanFeng, Sun, ZhiJia, Zhou, JianRong, Yang, GuiAn, Xu, Hong, Wang, Tuo, Chen, YuanBo
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container_end_page 1902
container_issue 10
container_start_page 1897
container_title Science China. Physics, mechanics & astronomy
container_volume 56
creator Wang, YanFeng
Sun, ZhiJia
Zhou, JianRong
Yang, GuiAn
Xu, Hong
Wang, Tuo
Chen, YuanBo
description A Monte Carlo method of the 3D GEM simulation is introduced. The physical process of the neutron detection is described with the Geant4 code and the Garfield code. The results of the optimized electric-fields, the emitted ions spectrum, the elec- trons transverse diffusion and the signal width are presented. Moreover, the preliminary result with a CF-252 neutron source is reported. These are useful in designing detector structures and to provide an optimized option for the development of the bo- ron-coated GEM neutron beam monitor.
doi_str_mv 10.1007/s11433-013-5166-6
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subjects 3D模拟
Astronomy
Boron
Classical and Continuum Physics
Electric fields
Geant4
Monte Carlo simulation
Neutron beams
Observations and Techniques
Physics
Physics and Astronomy
中子束
仿真
创业板
涂层
物理过程
监测
title Simulation study on the boron-coated GEM neutron beam monitor
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